A case including a holding portion and a rotary part is used to fix a drawer device. A first sidewall of the drawer device has a first hole. The holding portion has a second sidewall and the drawer device is disposed in the holding portion. A second hole is located in the second sidewall. The position of the second hole is corresponding to the first hole. The rotary part is pivoted on an outer side of the holding portion through a first hinge portion and the first hinge portion is located between a first protrusion portion and a second protrusion portion. When the drawer device comes into the holding portion, the drawer device is in contact with the first protrusion portion, which makes the rotary part turn in a first rotating direction and the second protrusion portion pass through the second hole to be fixed in the first hole.
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1. A case used for fixing a drawer device, wherein a first sidewall of the drawer device has a first hole, the case comprising:
a holding portion, which has at least one second sidewall and at least one second hole located in the second sidewall and corresponding to the first hole, and the holding portion is for holding the drawer device; and
a rotary part, which has a first hinge portion, a first protrusion portion and a second protrusion portion, wherein the rotary part is pivoted on an outer side of the holding portion through the first hinge portion, the first hinge portion is located between the first protrusion portion and the second protrusion portion, when the drawer device enters the holding portion, the drawer device pushes the first protrusion portion to make the second protrusion portion passes through the second hole and insert in the first hole.
5. An electronic device, comprising:
a drawer device, wherein at least one first sidewall of the drawer device has a first hole;
a holding portion, which has at least one second sidewall and at least one second hole located in the second sidewall and corresponding to the first hole, and the holding portion is for holding the drawer device; and
a rotary part, which has a first hinge portion, a first protrusion portion and a second protrusion portion, wherein the rotary part is pivoted on an outer side of the holding portion through the first hinge portion, the first hinge portion is located between the first protrusion portion and the second protrusion portion, when the drawer device enters the holding portion, the drawer device pushes the first protrusion portion to make the rotary part turn in a first rotating direction and the second protrusion portion passes through the second hole and insert in the first hole.
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This application claims the priority benefit of Taiwan application serial no. 95117817, filed May 19, 2006. All disclosure of the Taiwan application is incorporated herein by reference.
1. Field of Invention
The present invention relates to an electronic device and the case thereof, and more particularly, to a screw-less design of an electronic device and the case thereof.
2. Description of the Related Art
A case is an indispensable apparatus in an electronic device. The major functions of the case are to hold, fix and protect various electronic parts or modules assembled therein. For example, the case of a main body of a desktop computer is to hold, fix and protect various electronic parts or modules therein, such as the motherboard, the floppy disk drive, the hard disk drive and the optical disk drive.
A conventional case is usually designed to include various holding portions with different sizes. The number of holding portions in a case is varied, and different holding portions are designed to assemble various electronic parts or modules, which have different profiles to match the corresponding holding portions. When assembling, a user usually places various electronic parts or modules in different holding portions corresponding to the profiles thereof, followed by using screws to tight the various electronic parts or modules in the corresponding holding portions. Similarly, for maintenance and disassembly, a user needs to loose the screws to free the fastening between the electronic parts or modules and the holding portions, followed by taking away the electronic parts or modules from the holding portions.
However, for an electronic device and the case thereof with the design of screw fasteners, the jobs of assembly and disassembly require hand tools, which increases the inconvenience for a user. In particular, for a removable device that requires frequent assembly and disassembly such as a hard disk drive or an optical disk drive, the inconvenience is more obvious. For a device using screws to fasten, after multiple times of assemblies and disassemblies, the screws may get lost, which further causes the trouble of assembling electronic parts or modules. Furthermore, if a user inadvertently uses a screw with inappropriate screw pitch to fasten the device, the integrity of the thread holes of the electronic parts or modules will be destroyed, which leads to failure to fasten. Besides, repeatedly using a hand tool is also likely to damage the slot/socket of screw head cap, which results in failure to disassemble or assemble.
An objective of the present invention is to provide a screw-less case to solve the inconvenience of assembling and disassembling a drawer device.
Another objective of the present invention is to provide a screw-less electronic device to solve the inconvenience of assembling and disassembling a drawer device.
To achieve the above-described or other objectives, the present invention provides a case for fixing a drawer device. A first sidewall of the drawer device has a first hole. The case includes a holding portion and a rotary part. The holding portion has at least a second sidewall and the drawer device is disposed at an inner side of the holding portion. A second hole is located in the second sidewall, wherein the position of the second hole is corresponding to the position of the first hole. The rotary part has a first hinge portion, a first protrusion portion and a second protrusion portion. The first hinge portion of the rotary part is pivoted on an outer side of the holding portion and located between the first protrusion portion and the second protrusion portion. When the drawer device comes to a first position of the holding portion, the drawer device is in contact with the first protrusion portion, which forces the rotary part to turn in a first rotating direction and further makes the second protrusion portion pass through the second hole and be fixed in the first hole.
In an embodiment of the present invention, the above-described rotary part further has a third protrusion portion located between the first hinge portion and the second protrusion portion. Once the third protrusion portion holds the second sidewall by pressure, the rotary part produces a second moment to make the second protrusion portion out of the second hole.
In an embodiment of the present invention, when the above-mentioned drawer device comes into the holding portion, the drawer device exerts a force onto the first protrusion portion. At the point, the first protrusion portion receives a first moment that turns in the first rotating direction, and the first moment is larger than the second moment.
In an embodiment of the present invention, the above-mentioned case further includes a fixing part disposed at the outer side of the holding portion. The fixing part has a first latching portion, while the rotary part has a second latching portion. When the second latching portion latches the first latching portion, the second protrusion portion is out of the second hole.
In an embodiment of the present invention, the above-mentioned holding portion further includes a first opening and a second opening. The first protrusion portion is located at the second opening, and the drawer device comes into the holding portion via the first opening.
To achieve the above-described or other objectives, the present invention further provides an electronic device, which includes a drawer device, a holding portion and a rotary part. The drawer device has at least a first sidewall, which has a first hole. The holding portion has at least a second sidewall and the drawer device is disposed at an inner side of the holding portion. A second hole is located in the second sidewall, wherein the position of the second hole is corresponding to the position of the first hole. The rotary part has a first hinge portion, a first protrusion portion and a second protrusion portion. The first hinge portion of the rotary part is pivoted on an outer side of the holding portion and located between the first protrusion portion and the second protrusion portion. When the drawer device comes to a first position of the holding portion, the drawer device is in contact with the first protrusion portion, which forces the rotary part to turn in a first rotating direction and further makes the second protrusion portion pass through the second hole and be fixed in the first hole.
In an embodiment of the present invention, the above-described rotary part further has a third protrusion portion located between the first hinge portion and the second protrusion portion. Once the third protrusion portion holds the second sidewall by pressure, the rotary part produces a second moment to make the second protrusion portion out of the second hole.
In an embodiment of the present invention, when the above-mentioned drawer device comes into the holding portion, the drawer device exerts a force onto the first protrusion portion. At the point, the first protrusion portion receives a first moment that turns in the first rotating direction, and the first moment is larger than the second moment.
In an embodiment of the present invention, the above-mentioned case further includes a fixing part disposed at the outer side of the holding portion. The fixing part has a first latching portion, while the rotary part has a second latching portion. When the second latching portion latches the first latching portion, the second protrusion portion is out of the second hole.
In an embodiment of the present invention, the above-mentioned holding portion further includes a first opening and a second opening. The first protrusion portion is located at the second opening, and the drawer device comes into the holding portion via the first opening.
Since the present invention adopts the screw-less design for a case or an electronic device, a user does not need a hand tool to assemble or disassemble a drawer device. Therefore, the usage convenience is significantly advanced.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve for explaining the principles of the invention.
Further, referring to
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Note that, referring to
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In summary, the present invention adopts the scheme of screw-less design, wherein a rotary part is used to replace the conventional screws for fixing the drawer device. Therefore, a user does not need a hand tool to assemble or disassemble a drawer device. Furthermore, the user is allowed to manipulate by one hand for assembling and disassembling the drawer device. In addition, the scheme of screw-less design is able to avoid the problem resulted from using screws to fasten devices in the prior art that the screws are likely to be damaged or lost, which further advances the convenience of assembling and disassembling the drawer device.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the specification and examples to be considered as exemplary only, with a true scope and spirit of the invention being indicated by the following claims and their equivalents.
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
May 07 2007 | LIN, CHIEN-CHEN | ASUSTEK COMPUTER, INC | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 019590 | /0988 | |
May 18 2007 | AsusTek Computer Inc. | (assignment on the face of the patent) | / |
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